首页> 外文期刊>Biochemistry >Proton uptake by carboxylic acid groups upon photoreduction of the secondary quinone (Q(B)) in bacterial reaction centers from Rhodobacter sphaeroides: FTIR studies on the effects of replacing Glu H173
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Proton uptake by carboxylic acid groups upon photoreduction of the secondary quinone (Q(B)) in bacterial reaction centers from Rhodobacter sphaeroides: FTIR studies on the effects of replacing Glu H173

机译:球形红球菌细菌反应中心中的次级醌(Q(B))光还原后羧酸基团对质子的吸收:FTIR研究取代Glu H173的作用

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摘要

In the photosynthetic reaction center (RC) from Rhodobacter sphaeroides, Glu H173, located similar to 7 Angstrom from the center of the secondary quinone acceptor Q(B), is expected to contribute to proton uptake upon Q(B)(-) formation in response to the movement of an electron in its vicinity. Steady-state FTIR difference spectroscopy provides a method to monitor proton uptake by carboxylic acids upon photochemical changes. The FTIR spectra corresponding to the photoreduction of Q(B) were obtained at pH 7 for RCs containing Glu (native), Gin (EQ H173), or Asp (ED H173) at the H173 site. No new bands were observed in the carboxylic acid region (1770-1700 cm(-1)) in any of the mutant RCs compared to native RCs. In addition, the positive band at 1728 cm(-1), previously assigned to Glu L212 [Nabedryk, E., Breton, J., Hienerwadel, R., Fogel, C., Mantele, W., Paddock, M. L., and Okamura, M. Y. (1995) Biochemistry 34, 14722-14732], remained present in all of the mutant RCs. This result shows that Glu H173 is not a major contributor to proton uptake upon Q(B)(-) formation and further strengthens the assignment of the 1728 cm(-1) band to Glu L212. An increase in the 1728 cm(-1) band was observed in the EQ H173 RCs compared to that of either the ED H173 or native RCs. These changes are consistent with Glu and Asp at H173 remaining ionized in the Q(B) and Q(B)(-) states. Changes in the absorption regions of the semiquinone and amide or side chain groups in the spectra of the mutant RCs suggest slight changes in the protein structure compared to those of native RCs, which could contribute to the altered kinetics observed in the mutant RCs. [References: 39]
机译:在球形球形红球菌的光合作用反应中心(RC)中,Glu H173的位置与次要醌受体Q(B)的中心相距7埃,预计会有助于Q(B)(-)形成时质子的吸收。对电子在其附近运动的响应。稳态FTIR差异光谱学提供了一种在光化学变化时监测羧酸对质子吸收的方法。在pH值为7的情况下,对于在H173位置含有Glu(天然),Gin(EQ H173)或Asp(ED H173)的RC,获得了与Q(B)的光还原对应的FTIR光谱。与天然RC相比,在任何突变RC中,在羧酸区域(1770-1700 cm(-1))均未观察到新的谱带。此外,先前分配给Glu L212的正带为1728 cm(-1)[Nabedryk,E.,Breton,J.,Hienerwadel,R.,Fogel,C.,Mantele,W.,Paddock,ML,and Okamura,MY(1995)Biochemistry 34,14722-14732],仍然存在于所有突变RC中。该结果表明,Glu H173不是Q(B)(-)形成时质子吸收的主要贡献者,并且进一步增强了1728 cm(-1)谱带对Glu L212的分配。与ED H173或本地RC相比,EQ H173 RC中的1728 cm(-1)波段有所增加。这些变化与H173处的Glu和Asp保持一致,并保持在Q(B)和Q(B)(-)状态。突变RC光谱中半醌和酰胺或侧链基团的吸收区的变化表明,与天然RC相比,蛋白质结构略有变化,这可能导致突变RC中观察到的动力学改变。 [参考:39]

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